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[1]代明欣, 孙强, 杜银飞.基于灌注饱满度的灌浆路面灌浆材料流动性能调控.中南大学学报(自然科学版), 录用
[2]杜银飞, 马聪, 王顺归, 薛智博.用于水稳碎石的硫铝酸盐水泥性能调控与作用机理研究.铁道科学与工程学报, 录用
[3]杜银飞, 马聪, 王志杰.聚乙二醇/水泥基复合相变材料的制备与表征.建筑材料学报 (录用)
[4]Deng Haibin, Du Yinfei, Matching the Color Difference Between Asphalt Mixture and Cement Grouting Paste Used in Semi-flexible Pavement.Frontiers in Materials (2022.9: 816247)
[5]杜银飞, 马聪, 黄伟.SiC对地暖系统传热效率及力学性能作用机理分析.中南大学学报(自然科学版): (已录用).
[6]Du YF, Liu WZ, Huang W.Using silicon carbide to increase thermal conductivity of cement composite for improving heating efficiency of floor heating system.Construction and Building Materials, 2022, 325: 126707.
[7]Quan XK, Guo WH, Du YF.Improving latent heat storage capacity of polyethylene glycol/cement composite prepared via solution blending method.Solar Energy, 2021, 230: 355-364.
[8]Deng HB, Du YF, Wang SG.Matching color difference between asphalt mixture and cement grouting paste used in semi-flexible pavement[J].Frontiers in Materials: (Accepted).
[9]Du YF, Xu L, Chen JQ, Liu WD, Ma C.Reducing surface temperature of asphalt pavement by introducing hybrid mineral filler with high emissivity[J].International Journal of Pavement Engineering: (Under Review).
[10]Du YF, Ma C, Liu PS.Improving rutting and fatigue properties of asphalt mastic by adding cement-polyethylene glycol composite[J].Journal of Materials in Civil Engineering, 2021, 33 (10) : 04021291.
[11]Du YF, Tian J, Wang JC.Using steel fibers to accelerate the heat conduction in asphalt mixture and its performance evaluation.Solar Energy, 2021, 282: 122637.
[12]Du YF, Chen JQ, Wang JC.Cooling asphalt pavement by increasing thermal conductivity of steel fiber asphalt mixture[J].Construction and Building Materials: (Accepted).
[13]Du YF, Kong LX, Dai MX, Deng HB, Deng DY, Wei TZ.Laboratory investigation on thermal and road performances of asphalt mixture containing glass microsphere.Construction and Building Materials, 2020, 264: 120710.
[14]Du YF, Liu PS, Ma C, Quan XK.Characterization of a novel cement-based composite phase change material and potential cooling effect[J].Solar Energy, 2020, 208: 573-582.
[15]Du YF, Li W, Dai MX, Deng HB, Deng DY, Wei TZ.Evaluation of thermal and anti-rutting behaviors of thermal resistance asphalt pavement with glass microsphere.Construction and Building Materials, 2020, 263: 120609.
[16]Dan HC, Wang JC, Liu PS, Du YF.Effect of lightweight aggregate gradation on latent heat storage capacity of asphalt mixture for cooling asphalt pavement[J].Construction and Building Materials, 2020, 250: 118849.
[17]Du YF, Xu L, Deng HB, Deng DY.Evaluation of cooling and high-temperature performances of asphalt mixture containing fly ash cenosphere.Construction and Building Materials, 2020, 245: 118429.
[18]Du YF, Dai MX, Deng HB, Deng DY, Ma C, Cheng PF.Incorporating hollow glass microsphere to cool asphalt pavement: preliminary evaluation of asphalt mastic[J].Construction and Building Materials, 2020, 244: 118380.
[19]Du YF, Xu L, Deng HB, Deng DY, Ma C.Characterization of thermal, high-temperature rheological and fatigue properties of asphalt mastic containing fly ash cenosphere[J].Construction and Building Materials, 2020, 233: 117345.
[20]Du YF (通讯作者), Deng DY, Deng HB.Using lightweight materials to enhance thermal resistance of asphalt mixture for cooling asphalt pavement[J].Advances in Civil Engineering, 2019, 2019: 5216827.
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